EP1443571A2

Organic semiconductor element and fabrication method thereof

Abstract

The present invention provides an organic semiconductor element in which the insulation strength of the insulation layer and the carrier mobility of the organic semiconductor are both high. The semiconductor layer is an organic semiconductor element consisting of an organic compound. A gate oxide film consisting of an oxide of the gate electrode material is provided between the gate electrode and the gate insulation layer. The gate insulation layer consists of an organic compound.

EP1443571A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 28 January 2024, 2.7 years ago.

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14 claims: 2 independent, 12 dependent

  1. 1
    An organic semiconductor element comprising an organic semiconductor layer, which acts as a current channel;a gate insulation layer, which consists of an insulating material;a gate electrode, which lies opposite the semiconductor layer with the gate insulation layer interposed between the gate electrode and the semiconductor layer;and a source electrode and a drain electrode, which are each electrically connected in the vicinity of the two ends of the organic semiconductor layer,    wherein a gate oxide film, which consists of a gate electrode material oxide, is included between the gate electrode and the gate insulation layer;and    the gate insulation layer consists of an organic compound.
  2. 9
    A fabrication method for an organic semiconductor element that has an organic semiconductor layer, which acts as a current channel; a gate insulation layer, which consists of an insulating material; a gate electrode, which lies opposite the semiconductor layer with the gate insulation layer interposed between the gate electrode and the semiconductor layer; and a source electrode and a drain electrode, which are electrically connected in the vicinity of the two ends of the organic semiconductor layer, the fabrication method comprising:a gate electrode oxidation step of forming a gate oxide film by oxidizing a portion of the gate electrode;and a gate insulation layer formation step of forming the gate insulation layer consisting of an organic compound so as to cover the gate oxide film.